Wnt11 promotes cardiomyocyte development by caspase-mediated suppression of canonical Wnt signals

M Abdul-Ghani, D Dufort, R Stiles… - … and cellular biology, 2011 - Taylor & Francis
M Abdul-Ghani, D Dufort, R Stiles, Y De Repentigny, R Kothary, LA Megeney
Molecular and cellular biology, 2011Taylor & Francis
Specification and early patterning of the vertebrate heart are dependent on both canonical
and noncanonical wingless (Wnt) signal pathways. However, the impact of each Wnt
pathway on the later stages of myocardial development and differentiation remains
controversial. Here, we report that the components of each Wnt signal conduit are expressed
in the developing and postnatal heart, yet canonical/β-catenin activity is restricted to
nonmyocardial regions. Subsequently, we observed that noncanonical Wnt (Wnt11) …
Specification and early patterning of the vertebrate heart are dependent on both canonical and noncanonical wingless (Wnt) signal pathways. However, the impact of each Wnt pathway on the later stages of myocardial development and differentiation remains controversial. Here, we report that the components of each Wnt signal conduit are expressed in the developing and postnatal heart, yet canonical/β-catenin activity is restricted to nonmyocardial regions. Subsequently, we observed that noncanonical Wnt (Wnt11) enhanced myocyte differentiation while preventing stabilization of the β-catenin protein, suggesting active repression of canonical Wnt signals. Wnt11 stimulation was synonymous with activation of a caspase 3 signal cascade, while inhibition of caspase activity led to accumulation of β-catenin and a dramatic reduction in myocyte differentiation. Taken together, these results suggest that noncanonical Wnt signals promote myocyte maturation through caspase-mediated inhibition of β-catenin activity.
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